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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Facile fabrication of graphene-polypyrrole-Mn composites as high-performance electrodes for capacitive deionization
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Facile fabrication of graphene-polypyrrole-Mn composites as high-performance electrodes for capacitive deionization

机译:方便地制造石墨烯-聚吡咯-Mn复合材料作为用于电容去离子的高性能电极

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摘要

Three-dimensional reduced graphene oxide-polypyrrole-MnO2 (RGO-PPy-Mn) composites are facilely prepared by a two-step hydrothermal process. Pyrrole (Py) monomers are polymerized to PPy by KMnO4 in the presence of graphene oxide (GO), and then MnO2 is obtained simultaneously after redox reaction between graphene and KMnO4 to produce RGO-PPy-Mn composites. The influences of the mass ratio of Py to GO and the mole ratio of KMnO4 to Py on RGO-PPy-Mn composites are investigated. The resultant composites exhibit a hierarchical porous structure with a specific surface area of 331 m(2) g(-1) and excellent specific capacity of 356 F g(-1), much higher than those of pure RGO or PPy electrodes. Enhanced electrochemical capacity and low inner resistance endow RGO-PPy-Mn composite electrodes with an outstanding specific electrosorptive capacity of 18.4 mg g(-1). Furthermore, RGO-PPy-Mn composite electrodes have good rate stability and cycling stability for capacitive deionization applications.
机译:通过两步水热法轻松制备了三维还原氧化石墨烯-聚吡咯-MnO2(RGO-PPy-Mn)复合材料。在氧化石墨烯(GO)存在下,KMnO4将吡咯(Py)单体聚合为PPy,然后在石墨烯与KMnO4进行氧化还原反应后同时获得MnO2,以生产RGO-PPy-Mn复合材料。研究了Py与GO的质量比和KMnO4与Py的摩尔比对RGO-PPy-Mn复合材料的影响。所得复合材料显示出具有331 m(2)g(-1)的比表面积和356 F g(-1)的出色比容量的分层多孔结构,远高于纯RGO或PPy电极的比容量。增强的电化学容量和低内阻赋予RGO-PPy-Mn复合电极以出色的18.4 mg g(-1)的比电吸附容量。此外,RGO-PPy-Mn复合电极在电容性去离子应用中具有良好的速率稳定性和循环稳定性。

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